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Intelligent path planning for small modular reactors based on improved reinforcement learning
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作者 DONG Yun-Feng ZHOU Wei-Zheng +1 位作者 WANG Zhe-Zheng ZHANG Xiao 《四川大学学报(自然科学版)》 北大核心 2025年第4期1006-1014,共9页
Small modular reactor(SMR)belongs to the research forefront of nuclear reactor technology.Nowadays,advancement of intelligent control technologies paves a new way to the design and build of unmanned SMR.The autonomous... Small modular reactor(SMR)belongs to the research forefront of nuclear reactor technology.Nowadays,advancement of intelligent control technologies paves a new way to the design and build of unmanned SMR.The autonomous control process of SMR can be divided into three stages,say,state diagnosis,autonomous decision-making and coordinated control.In this paper,the autonomous state recognition and task planning of unmanned SMR are investigated.An operating condition recognition method based on the knowledge base of SMR operation is proposed by using the artificial neural network(ANN)technology,which constructs a basis for the state judgment of intelligent reactor control path planning.An improved reinforcement learning path planning algorithm is utilized to implement the path transfer decision-makingThis algorithm performs condition transitions with minimal cost under specified modes.In summary,the full range control path intelligent decision-planning technology of SMR is realized,thus provides some theoretical basis for the design and build of unmanned SMR in the future. 展开更多
关键词 Small modular reactor Operating condition recognition Path planning Reinforcement learning
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Palladium-catalyzed modular biomimetic synthesis of lignans derivatives
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作者 Junlong Tang Yuhan Zhao +4 位作者 Yangbin Jin Liren Zhang Yuanfang Wang Wanqing Wu Huanfeng Jiang 《Chinese Chemical Letters》 2025年第7期402-408,共7页
Lignans have been established as a privileged scaffold in drug discovery,particularly in anticancer and antioxidant properties.Concise and efficient construction of lignans and their derivatives in a single operation ... Lignans have been established as a privileged scaffold in drug discovery,particularly in anticancer and antioxidant properties.Concise and efficient construction of lignans and their derivatives in a single operation holds great medicinal significance for structure-activity relationship studies yet remains challenging.Drawing inspiration from the biosynthesis of lignans,we present a general,high-step-economy palladium-catalyzed reaction that converts simple chemical feedstocks into dehydrodibenzylbutyrolactone lignans through the in-situ construction and coupling of two phenylpropanoid molecules.The diversity of organoboronic acids and the editability of enyne provide a powerful platform for the rapid construction of lignan libraries,featuring 82 lignans analogs,collective syntheses of 10 distinct lignan skeletons,and 13 hybrid molecules combining pharmacophore fragments with drug and derivatives.The subtle combination of phosphine ligands with quinones for switching chemoselectivity is vital to the success of this protocol. 展开更多
关键词 Lignans PALLADIUM modular synthesis Dicarbofunctionalized cyclization ENYNE
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Research on Modular Design,Production,and Construction Integration of Municipal Prefabricated Bathroom Stations
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作者 Qiang Huang 《Journal of Architectural Research and Development》 2025年第5期57-62,共6页
This article focuses on the municipal prefabricated bathroom station.It elaborates on its modular design concept,including key design points such as spatial layout,functional modules,and determination of key parameter... This article focuses on the municipal prefabricated bathroom station.It elaborates on its modular design concept,including key design points such as spatial layout,functional modules,and determination of key parameters;introduces the optimization of intelligent production processes,precision control,and integration of construction technology,and also mentions the verification of full lifecycle applications and quality control;as well as emphasizes the importance of BIM+IoT platform and looks forward to the future. 展开更多
关键词 Municipal prefabricated Bathroom station modular design
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Hybrid non-fragile attitude takeover control of modular spacecraft with communication delay
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作者 Ziyu YANG Yibo DING +1 位作者 Ran TAO Xiaokui YUE 《Chinese Journal of Aeronautics》 2025年第11期469-486,共18页
The modular design pattern revolutionizes the monolithic morphology of traditional spacecraft into the reconfigurable combination of modular units.However,due to the morphological changes,the effective takeover contro... The modular design pattern revolutionizes the monolithic morphology of traditional spacecraft into the reconfigurable combination of modular units.However,due to the morphological changes,the effective takeover control of the combination through multiple independent modules,including the controller and actuator modules,remains a challenge.In this paper,a robust takeover control scheme with high allocation accuracy,independent of precise inertia,is proposed for the reconfigurable combination in the presence of the inertia uncertainty,model parameters uncertainty,communication delay,and external disturbance.By reregulating the conditions for performance synthesis into a symmetric form with similar structure,a hybrid non-fragile H_(2)/H_(∞)controller is designed for handling two types of controller gain perturbations,achieving superior performance with less energy consumption through simultaneous perturbation suppression.Moreover,through temporarily storing the allocation signals in the initial stage to cover the upper bound of the communication delay,the proposed distributed dynamic allocation scheme enables the actuator modules to implement the control signals jointly to stabilize the combination.Distinguished from general allocators,the proposed high-precision allocation scheme under communication delay can not only ensure full exploitation of controller performance,but also dynamically adjust allocation coefficients based on energy consumption index of controller modules to prevent actuator saturation.Numerical simulations demonstrate the superiority of the proposed hybrid non-fragile controller and the allocation scheme. 展开更多
关键词 Attitude stabilization Communication delay Hybrid non-fragile modular spacecraft Takeover control
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Research on Compliance Flight Test Technology of Integrated Modular Avionics(IMA)System
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作者 Bo Xu 《Journal of Electronic Research and Application》 2025年第3期208-213,共6页
Based on the analysis and research of the airworthiness objective of integrated modular avionics system(IMA),and the characteristics of IMA system’s comprehensive and complex cross-linking with other airborne systems... Based on the analysis and research of the airworthiness objective of integrated modular avionics system(IMA),and the characteristics of IMA system’s comprehensive and complex cross-linking with other airborne systems,the extraction strategy of IMA system’s compliance flight test subjects and the selection method of IMA system’s compliance flight test parameters are proposed.The data analysis method based on the abnormal probability matrix of the IMA system is proposed for the first time,and the abnormal state information of the IMA system can be quickly identified.The compliance flight test of the IMA system is completed with limited flight test resources,which achieves the purpose of saving flight test sorties and improving flight test efficiency.This research has been successfully applied to the airworthiness certification flight test of a certain civil transport aircraft in China,and can provide technical support for the subsequent type flight test. 展开更多
关键词 Integrated modular avionics Flight test COMPLIANCE Abnormal probability
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Topological considerations for reinforced concrete modular protection systems against near-field overpressure generated by close-in detonations
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作者 Sangyoung Han Kukjoo Kim +4 位作者 Hyeon-Jin Kim Jang-Woon Baek Hyun-Do Yun Gyu-Yong Kim Sangwoo Park 《Defence Technology(防务技术)》 2025年第11期112-125,共14页
With the increasing demand for secure infrastructure such as hydrogen refueling stations,chemical plants,and energy storage systems,the need for protective structures capable of withstanding close-in detonations has b... With the increasing demand for secure infrastructure such as hydrogen refueling stations,chemical plants,and energy storage systems,the need for protective structures capable of withstanding close-in detonations has become more critical.Existing design guidelines for protective walls(e.g.,UFC 3-340-02)primarily address mid-and far-field explosions,providing limited insights into near-field effects.Considering the effect of slight slopes(<40°)on reducing maximum reflected overpressure is deemed negligible.This study investigated the effectiveness of a reinforced concrete(RC)modular protection system(MPS)incorpo rating a diagonally tapered wall in attenuating re flected overpressures from closein detonations.Full-scale field experiments using a 51.3 kg TNT charge,representing the explosion energy of a typical hydrogen vessel rupture,demonstrated that a wall with a 7°slope significantly outperformed a vertical wall of equivalent concrete volume in terms of blast resistance.Observed structural responses included cracking,horizontal shear failure,and overturning.Complementary simulations using a validated computational fluid dynamics(CFD)model showed that the tapered wall reduced peak overpressure by 30%-40%compared to an equivalent vertical wall.This result highlights the potential of minor geometric modifications to enhance blast resilience.The tapered design effectively redirects incident blast waves,reducing localized damage while also conserving material,thus preserving modular benefits such as ease of transport and reusability.These findings suggest that diagonally tapered RC-based MPSs can offer a practical and resilient solution for industrial and military applications subject to near-field or sequential blast threats. 展开更多
关键词 modular protective system Protective wall Close-in detonation Near-field overpressure Full-scale explosion test
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Modular scaffolds with intelligent visual guidance system for in situ bone tissue repair
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作者 Huifeng Shao Pengcheng Xia +8 位作者 Tao Zhang Jinyuan Shi Zhiqiang Huang Xianqi Yuan Zhiheng Nian Xiao Zhao Rougang Zhou Youping Gong Yong He 《International Journal of Extreme Manufacturing》 2025年第2期706-721,共16页
In clinical practice,the irregular shapes of traumas pose a significant challenge in rapidly manufacturing personalized scaffolds.To address these challenges,inspired by LEGO■ bricks,this study proposed a novel conce... In clinical practice,the irregular shapes of traumas pose a significant challenge in rapidly manufacturing personalized scaffolds.To address these challenges,inspired by LEGO■ bricks,this study proposed a novel concept of modular scaffolds and developed an innovative system based on machine vision for their rapid and intelligent assembly tailored to defect shapes.Trapezoidal interfaces effectively connect standardized bone units based on magnesium-doped silicate calcium,ensuring high stability of the modular scaffolds,with compressive strength up to 135 MPa and bending strength up to 17 MPa.Through self-developed defect recognition and reconstruction algorithms,defect recognition and personalized assembly schemes for bone scaffolds can be achieved autonomously.Modular scaffolds seamlessly integrate with surrounding bone tissue,promoting new bone growth,with no apparent differences compared to fully 3D printed integral scaffolds in the skull and femur repair experiments.In summary,the adoption of modular scaffolds not only integrates personalization and standardization but also satisfies the optimal treatment window. 展开更多
关键词 3D printing modular scaffolds rapidly manufacturing intelligent assembly traumas repair
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Self-play training and analysis for GEO inspection game with modular actions
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作者 ZHOU Rui ZHONG Weichao +1 位作者 LI Wenlong ZHANG Hao 《Journal of Systems Engineering and Electronics》 2025年第5期1353-1373,共21页
This paper comprehensively explores the impulsive on-orbit inspection game problem utilizing reinforcement learning and game training methods.The purpose of the spacecraft is to inspect the entire surface of a non-coo... This paper comprehensively explores the impulsive on-orbit inspection game problem utilizing reinforcement learning and game training methods.The purpose of the spacecraft is to inspect the entire surface of a non-cooperative target with active maneuverability in front lighting.First,the impulsive orbital game problem is formulated as a turn-based sequential game problem.Second,several typical relative orbit transfers are encapsulated into modules to construct a parameterized action space containing discrete modules and continuous parameters,and multi-pass deep Q-networks(MPDQN)algorithm is used to implement autonomous decision-making.Then,a curriculum learning method is used to gradually increase the difficulty of the training scenario.The backtracking proportional self-play training framework is used to enhance the agent’s ability to defeat inconsistent strategies by building a pool of opponents.The behavior variations of the agents during training indicate that the intelligent game system gradually evolves towards an equilibrium situation.The restraint relations between the agents show that the agents steadily improve the strategy.The influence of various factors on game results is tested. 展开更多
关键词 impulsive orbital game inspection mission turnbased reinforcement learning modular action self-play
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Advancing urban resilience with modular construction:An integrated sustainability assessment framework
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作者 Mohammad Kamali Kasun Hewage +2 位作者 Anber Rana Shahria Alam Rehan Sadiq 《Resilient Cities and Structures》 2025年第2期46-68,共23页
Given the rapid growth of sustainable construction strategies globally and the importance of resiliency in civil infrastructure,it is crucial to adopt best practices.Modular construction is one such practice and is co... Given the rapid growth of sustainable construction strategies globally and the importance of resiliency in civil infrastructure,it is crucial to adopt best practices.Modular construction is one such practice and is considered a better alternative to conventional construction in terms of resilience,construction times,resource efficiency,and sustainability.However,the continued expansion of modular construction relies on quantifying and evaluating its sustainability and the purported benefits.This paper develops and checks feasibility through an integrated multi-level decision support framework to empirically evaluate the sustainability performances of single-family residential modular homes.Criteria and indicator development and calculation,benchmark scale establishment,quantitative and qualitative data collection from literature and surveys,and multi-criteria decision analysis are unique aspects of this framework.The results of the two case studies located in the Okanagan region,Canada showed that modular homes perform at a higher level of sustainability than their conventional counterparts across multiple metrics and levels related to environmental and economic factors.The modular homes scored eco-efficiency values of 62.5 and 56.0,respectively and fell into higher performance range.The proposed frame-work offers flexibility in examining different dimensions of sustainability,providing valuable insights into the key parameters that need to be addressed to enhance overall sustainability.This research,which integrates life cycle thinking and decision-making,helps the construction industry and,municipalities,governments,and pol-icymakers in making informed decisions on the selection of suitable construction methods in city developments and move towards a more resilient and sustainable sector. 展开更多
关键词 modular construction Performance benchmarking Building resiliency Resilience cities Life cycle sustainability
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Multi-modular UAV for Mars exploration:A concept feasibility study
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作者 Djahid GUERAICHE Daniel ALBITAR +1 位作者 Konstantin FEDOROV Yihan YANG 《Chinese Journal of Aeronautics》 2025年第9期94-113,共20页
A brief concept study of a modular research aircraft with potential applications to Mars exploration is conducted.Considered are dimensional and mass constraints of a launch vehicle payload compartment,mission radius ... A brief concept study of a modular research aircraft with potential applications to Mars exploration is conducted.Considered are dimensional and mass constraints of a launch vehicle payload compartment,mission radius extension applying ground mobility and overall flight envelope extension using fixed-wing aerodynamics.Also,some lessons learned from NASA Mars Ingenuity flights are considered and addressed with few solutions.The modular system includes a fixed-wing design along with a number of smaller autonomous quadcopter UAVs,encapsulated inside a geodesic spherical support through a gimbal mechanism for ground mobility.Analyzed is the feasibility of allocating to these mini drones both scout and mapping tasks of complex terrain such as crater walls,canyons and cave systems that might hold key insights into the planet's geologic history.Once docked with the mothership fixed wing,the mini drones serve as a distributed propulsion system,for vertical take-off and landing and control,completely replacing control surfaces on the flying wing itself,its engine and landing gear.CFD and structural simulations have demonstrated the flight-ability in Mars conditions of a flying wing design along with scout drone prototypes with a pentagon-hexagon geodesic shell.Also demonstrated is the great flexibility of the suggested modular approach for various research applications and mission profiles on Mars and other planets or moons,improving overall reliability and mission radius. 展开更多
关键词 Geodesic sphere Golberg polyhedron INGENUITY Low Reynolds number Mars exploration modular aircraft Multirotor Spherical drone
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Seismic resilience design of prefabricated modular pressurized buildings
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作者 Zhiwu Ye Haifeng Bu +3 位作者 Zhimao Liu Deng Lu Dong Min Hongbo Shan 《Resilient Cities and Structures》 2025年第1期53-70,共18页
The seismic intensity is generally high in the Qinghai-Tibet Plateau region of China.The seismic performance of the new prefabricated modular pressurized buildings used to solve the plateau response is insufficient.To... The seismic intensity is generally high in the Qinghai-Tibet Plateau region of China.The seismic performance of the new prefabricated modular pressurized buildings used to solve the plateau response is insufficient.To solve this problem,the small friction pendulum bearing(FPB)isolation design is proposed for modular pressurized buildings.Firstly,a simplified model of cross-truss support for the pressurized module is proposed to simplify the modeling and calculation of the pressurized buildings.The reasonability of the simplified model is verified by comparing the refined finite element model.Subsequently,according to the FPB design process for modular pressurized buildings,a small FPB for isolation is provided for a two-story modular pressurized building under 8-degree fortification earthquakes.Lastly,the seismic effectiveness and constructional feasibility of the isolation structure are verified compared with the non-isolated structure using dynamic time-history analysis.The study results show that the size of FPBs for modular pressurized buildings should consider both displacement and dimension requirements to weigh seismic isolation performance and installation feasibility,respectively.When adopting FPBs,the response of the structure is significantly reduced,and the seismic isolation effect is obvious.The proposed construction process can improve the seismic resilience of the prefabricated modular pressurized buildings by replacing post-earthquake damaged components quickly.It provides ideas for the seismic isolation design of the prefabricated modular pressurized buildings in high seismic intensity areas. 展开更多
关键词 modular pressurized buildings Seismic isolation Time-history dynamic analysis Fast construction Seismic resilient design
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多高层模块化建筑布局智能生成技术
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作者 刘界鹏 王俐强 +4 位作者 夏毅 齐宏拓 陈杰 李江 李嘉琛 《建筑科学与工程学报》 北大核心 2026年第1期1-13,共13页
针对模块化建筑布局设计中人工设计困难和自动化程度低等问题,提出了多高层模块化建筑智能布局设计方法,实现了多样性布局方案的高效与自动生成。首先针对模块化建筑图纸进行自动信息提取与建筑区域分组,完成建筑初始二维图纸信息到标... 针对模块化建筑布局设计中人工设计困难和自动化程度低等问题,提出了多高层模块化建筑智能布局设计方法,实现了多样性布局方案的高效与自动生成。首先针对模块化建筑图纸进行自动信息提取与建筑区域分组,完成建筑初始二维图纸信息到标准信息格式的转换。基于深度强化学习对多高层模块化建筑进行布局方案智能生成,通过模块单元总数、房间调整值和房间调整量等奖励值的协同作用,实现模块单元布局方案的优化与评估;最后,为了提升工程实用性和操作便捷性,集成建筑信息提取、建筑布局设计、布局方案可视化等功能模块,搭建了模块化建筑智能布局设计平台。以立新湖学校项目为案例,采用所提出方法的3种预设规格的模块单元进行了布局方案的生成,评估了生成方案的模块单元总数、房间调整量、房间调整值3个指标以及归一化后的总指标值。结果表明:所提出的方法可以高效生成适用于不同场景的模块方案,提升了模块化建筑设计的自动化与智能化水平,为工程实践提供了技术支撑。 展开更多
关键词 模块化建筑 深度强化学习 模块布局 生成式设计 平台开发
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基于BIM的装配式混凝土建筑质量追溯智能预警研究
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作者 刘美霞 苏磊 +4 位作者 杨思忠 王艳艳 张中 刘洪娥 刘步芳 《建筑结构》 北大核心 2026年第2期121-130,共10页
随着装配式建筑的不断推进,其质量管控问题日益受到广泛关注。从装配式混凝土建筑质量问题和原因分析入手,基于风险与频率等级将质量问题归类,确定质量追溯项和智能预警关键点。按照管理层级划分智能预警等级,形成分级预警表并制定关键... 随着装配式建筑的不断推进,其质量管控问题日益受到广泛关注。从装配式混凝土建筑质量问题和原因分析入手,基于风险与频率等级将质量问题归类,确定质量追溯项和智能预警关键点。按照管理层级划分智能预警等级,形成分级预警表并制定关键指标预警流程。以追溯码为基础建立“一码到底”质量追溯编码体系,实现预制构件生产全过程质量信息与BIM模型实时联动。设计基于传统设计和BIM正向设计的两种信息传递路线,设置BIM模型差异化的颗粒度LOD要求,确保信息传递的唯一性和便捷性。基于上述研究成果,建立基于BIM的装配式混凝土建筑质量追溯智能预警系统。该系统在北京市某科技示范工程中进行示范应用,验证了该系统可使装配式混凝土建筑质量追溯效率提升,提高了主体结构质量安全和功能品质。 展开更多
关键词 装配式混凝土建筑 质量追溯 智能预警 BIM技术 编码体系
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模块化钢结构剪力键双层灌浆连接的轴向力学性能
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作者 白久林 杨季 +3 位作者 梁天龙 刘宜丰 金双双 邓世斌 《湖南大学学报(自然科学版)》 北大核心 2026年第1期31-41,共11页
模块化钢结构作为一种高效、环保、可持续的建造方式,其单元间的连接将直接影响结构的整体稳定性和抗震性能.模块化钢结构中常见的焊接、螺栓连接和预应力连接等连接方式,存在施工效率低下、安装误差敏感、作业空间受限等问题.对此,本... 模块化钢结构作为一种高效、环保、可持续的建造方式,其单元间的连接将直接影响结构的整体稳定性和抗震性能.模块化钢结构中常见的焊接、螺栓连接和预应力连接等连接方式,存在施工效率低下、安装误差敏感、作业空间受限等问题.对此,本文提出了一种新型剪力键双层灌浆连接,可适用于模块化钢结构的角柱节点、边柱节点和中柱节点.为了评估新型连接的轴向力学性能,本研究制作了8个连接试件进行推出试验,探究了剪力键间距、灌浆料强度、连接长度、灌浆层数对试件破坏形态、受拉承载力和应变分布的影响.基于理论分析,推导了剪力键双层灌浆连接的受拉承载力计算公式,通过与试验结果进行对比,验证了其有效性和精确度,可为该新型连接在模块化钢结构中的工程应用提供理论依据. 展开更多
关键词 模块化建筑 钢结构 剪力键 双层灌浆连接 推出试验 受拉承载力提升
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AI赋能软件需求工程课程教学改革
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作者 刘杰 宋孝寒 +3 位作者 董云卫 王兵书 马春燕 武君胜 《计算机教育》 2026年第1期88-95,共8页
针对传统软件需求工程教学与产业智能化转型脱节的问题,分析基于人工智能及大模型技术的软件需求语义解析、需求变更影响范围聚类等技术,阐明人工智能技术对软件需求工程的需求获取、分析、验证等环节的深刻影响,提出“基础模块+AI赋能... 针对传统软件需求工程教学与产业智能化转型脱节的问题,分析基于人工智能及大模型技术的软件需求语义解析、需求变更影响范围聚类等技术,阐明人工智能技术对软件需求工程的需求获取、分析、验证等环节的深刻影响,提出“基础模块+AI赋能模块”的双层课程教学改革方案:基础模块聚焦UML建模、需求文档规范等核心理论,AI赋能模块依托DeepSeek大模型实现语义解析、Kano-AI混合优先级排序及自动化文档生成。通过电商系统(智能UML建模优化)与医疗设备(动态需求优先级调整)两个闭环教学案例说明方案的有效性。改革取得显著的成效,需求分析效率提升58%,文档缺陷率降低65%,学生就业率升至98%,为软件工程教育智能化转型提供可复制的实践范式。 展开更多
关键词 软件需求工程 DeepSeek 模块化设计 智能化工具链 KANO模型
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考虑参数失配下MMC对数滑模观测技术研究
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作者 郝为瀚 彭冠炎 +2 位作者 陈永稳 詹宇泓 李天皓 《电子测量技术》 北大核心 2026年第1期110-120,共11页
基于模块化多电平变流器(MMC)的柔性直流输电系统通常采用传统滑模观测技术观测状态变量,在运行工况突变下导致系统状态重构精度与暂态响应速度显著下降。提出一种离散时间对数滑模观测(DTLSMO)技术,构造观测误差范数及期望幅值的动态... 基于模块化多电平变流器(MMC)的柔性直流输电系统通常采用传统滑模观测技术观测状态变量,在运行工况突变下导致系统状态重构精度与暂态响应速度显著下降。提出一种离散时间对数滑模观测(DTLSMO)技术,构造观测误差范数及期望幅值的动态边界层函数,实现观测器增益的自适应非线性映射,规避依赖经验试错的参数整定过程。建立参数失配下MMC离散化模型并分析其能观测性,设计基于有源阻尼特性的对数滑模趋近律并注入桥臂动态方程,利用二倍频环流注入算法以实现电容电压均衡控制与环流抑制的协同优化,证明了所提观测器的渐进稳定性与广义收敛性。在MATLAB/Simulink平台仿真分析直流电压9.6 kV MMC系统并搭建硬件样机实验验证,引入ITAE等评价指标对比分析DTLSMO与传统时间离散滑模观测器(DTSMO)、自适应观测器(AO)的动态性能差异,证明所提观测器在桥臂电感失配20%时观测精确度分别提升0.935%和2.535%,在电容值不确定和直流电压突变下仍可展现其快速响应能力,鲁棒性良好。 展开更多
关键词 模块化多电平变流器 参数失配 有源阻尼 渐进稳定 广义收敛
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基于QPR和RC协同控制的MMC整流器环流抑制策略研究
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作者 邓亚平 亷官根 +2 位作者 王小凤 刘彦男 贾颢 《电力电子技术》 2026年第2期38-45,共8页
针对模块化多电平变换器(MMC)整流器中存在的环流问题,本文提出了一种基于准比例谐振(QPR)和重复控制(RC)协同的环流抑制策略。建立了等效电路模型和系统数学模型,分析了MMC整流器二倍频谐波分量及其他偶次倍频谐波分量环流的产生原因,... 针对模块化多电平变换器(MMC)整流器中存在的环流问题,本文提出了一种基于准比例谐振(QPR)和重复控制(RC)协同的环流抑制策略。建立了等效电路模型和系统数学模型,分析了MMC整流器二倍频谐波分量及其他偶次倍频谐波分量环流的产生原因,通过QPR控制抑制环流中的二倍频分量,并融合RC来抑制全部偶数倍频的分量。实验结果表明:本文所提出的QPR和RC协同控制策略能够有效抑制MMC整流器中的环流,并在保障系统快速响应的同时提高了稳态精度。 展开更多
关键词 模块化多电平变换器 整流器 环流抑制 准比例谐振控制
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基于SPSM-MPC的海上风电系统陆上换流站优化控制策略
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作者 李慧 钱磊 +1 位作者 范新桥 魏玲 《电力系统保护与控制》 北大核心 2026年第2期48-57,共10页
海上风电并网系统中基于模块化多电平换流器的陆上换流站,在风电出力突变、设备投切及电网电压跌落等工况下易引发扰动。针对此问题,提出一种融合斜率无源滑模与模型预测控制(slop passivity-based sliding mode-model predictive contr... 海上风电并网系统中基于模块化多电平换流器的陆上换流站,在风电出力突变、设备投切及电网电压跌落等工况下易引发扰动。针对此问题,提出一种融合斜率无源滑模与模型预测控制(slop passivity-based sliding mode-model predictive control,SPSM-MPC)的优化策略。该策略以电流内环控制为核心,采用无源滑模(passivity-based sliding mode,PSM)控制搭建基础框架,通过引入斜率调节机制构建斜率无源滑模(slop passivity-based sliding mode,SPSM)控制策略。并将模型预测控制(model predictive control,MPC)有机嵌入调制算法体系。利用仿真模型对比传统PI、PSM与SPSM-MPC这3种策略在系统正常运行及3种典型扰动工况下的动态性能。结果表明:SPSM-MPC策略可将系统稳态运行输出电流THD降至4.45%,风电出力突变响应时间缩短至2 ms,电网电压跌落工况下有功稳定时间缩短至0.15 s。SPSM-MPC策略通过斜率机制与预测控制的协同作用,有效提升了系统在动态扰动下的鲁棒性,为海上风电并网系统的稳定运行提供了新的控制方案。 展开更多
关键词 风电并网 模块化多电平换流器 无源滑模控制 模型预测控制 最近电平逼近调制
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罗氏cobase602与modular e170电化学发光分析仪检测血清HBsAg阳性低值结果的对比分析 被引量:6
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作者 李娅 章迪 +2 位作者 张赟 皇海 苏明权 《现代检验医学杂志》 CAS 2017年第3期123-125,共3页
目的探讨乙肝表面抗原(HBsAg)阳性低值结果在不同检测系统间结果的相关性,为临床检验结果分析及报告的准确发布提供参考。方法选取经罗氏电化学发光检测仪Cobas e602检测的HBsAg结果在1~80 COI的标本243份,同时将标本在罗氏电化学发光... 目的探讨乙肝表面抗原(HBsAg)阳性低值结果在不同检测系统间结果的相关性,为临床检验结果分析及报告的准确发布提供参考。方法选取经罗氏电化学发光检测仪Cobas e602检测的HBsAg结果在1~80 COI的标本243份,同时将标本在罗氏电化学发光检测仪Modular e170上进行检测,计算两组测定值的直线回归相关系数R^2值,计算各组别的阳性符合率。结果两个检测系统比对实验结果为R^2=0.933。根据测定值高低分为A,B,C,D和E组的阳性符合率分别为60.60%,92.72%,96.66%,96.66%和100%;男性组阳性符合率为87.66%,女性组阳性符合率为70.96%,男性患者阳性符合率大于女性患者(P<0.05)。结论两检测系统对于范围在1~80 COI的标本检测结果有相关性:其中测量值在10 COI以上标本的阳性符合率完全一致;测量值在1~10 COI的标本阳性符合率不一致,且随结果的减小而降低,在临床上可能导致有争议的结果,建议做进一步复查。 展开更多
关键词 乙肝表面抗原 罗氏Cobas e602 罗氏modular e170 阳性低值
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基于模块化感应熔炼电源设计与应用
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作者 汪亮 刘佳 +1 位作者 徐冬 谢佳颖 《电力电子技术》 2026年第2期151-157,共7页
大功率感应加热熔炼电源因具有高效、清洁、易控制及加热速度快等优势而被广泛应用。本文以某钢厂的实际大功率感应加热熔炼电源项目为背景,设计了一种应用驱动10 t容量熔炼炉线圈且实际电源功率为8 MW电磁感应加热电源。本文首先对大... 大功率感应加热熔炼电源因具有高效、清洁、易控制及加热速度快等优势而被广泛应用。本文以某钢厂的实际大功率感应加热熔炼电源项目为背景,设计了一种应用驱动10 t容量熔炼炉线圈且实际电源功率为8 MW电磁感应加热电源。本文首先对大功率感应加热熔炼电源的主电路方案进行分析,采用4个2 MW感应熔炼加热电源模块化装置并联合成一个8 MW功率的电源;然后,根据项目实际需求设计出了2 MW感应熔炼加热电源模块主电路的拓扑结构和主电路上各项参数;最后,结合某钢厂实际熔炼炉线圈实际负载进行试验,验证了本文所设计的8 MW电磁感应加热熔炼模块化并联电源具有很强的冗余性能和改善进线电网侧谐波的效果,具有很大的工程实际应用价值和意义。 展开更多
关键词 感应加热熔炼电源 模块化 大功率
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